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气相与溶液相中的七糖 Ferrier 阳离子的特性与命运。

Characterization and Fate of a Septanosyl Ferrier Cation in the Gas and Solution Phases.

机构信息

Fritz Haber Institute of the Max Planck Society, 14195 Berlin, Germany.

Institute of Chemistry and Biochemistry, Freie Universität Berlin, 14195 Berlin, Germany.

出版信息

J Org Chem. 2023 May 5;88(9):5543-5553. doi: 10.1021/acs.joc.3c00079. Epub 2023 Apr 24.

Abstract

Ferrier reactions follow a mechanistic pathway whereby Lewis acid activation of a cyclic enol ether facilitates departure of an allylic leaving group to form a glycosyl Ferrier cation. Attack on the Ferrier cation provides a new acetal linkage concurrent with the transposition of the alkene moiety. The idiosyncratic outcomes of Ferrier reactions of seven-membered ring carbohydrate-based oxepines prompted an investigation of its corresponding septanosyl Ferrier cation. Experiments that characterized the ion, including gas-phase cryogenic IR spectroscopy matched with density functional theory-calculated spectra of candidate cation structures, as well as product analysis from solution-phase Ferrier reactions, are reported here. Results from both approaches revealed an inclination of the seven-membered ring cation to contract to five-membered ring structures. Gas-phase IR spectra matched best to calculated spectra of structures in which five-membered dioxolenium formation opened the oxepine ring. In the solution phase, an attack on the ion by water led to an acyclic enal that cyclized to a -methylene-aldehydo arabinofuranoside species. Attack by allyl trimethylsilane, on the other hand, was diastereoselective and yielded a -allyl septanoside.

摘要

费里埃反应遵循一种机理途径,其中路易斯酸活化环状烯醇醚促进烯丙基离去基团离去,形成糖基费里埃阳离子。费里埃阳离子的攻击提供了一个新的缩醛键,同时伴随着烯烃部分的转位。基于碳水化合物的七元环氧杂环庚烷的费里埃反应的特殊结果促使人们对其相应的七元糖基费里埃阳离子进行了研究。本文报道了表征该离子的实验,包括气相低温红外光谱与候选阳离子结构的密度泛函理论计算光谱相匹配,以及来自溶液相费里埃反应的产物分析。这两种方法的结果都表明,七元环阳离子倾向于收缩成五元环结构。气相 IR 光谱与五元二氧杂环戊烯形成打开氧杂环庚烷环的结构的计算光谱匹配最佳。在溶液相中,离子被水攻击生成无环烯醛,然后环化生成 -亚甲基-醛基阿拉伯呋喃糖苷。另一方面,烯丙基三甲基硅烷的攻击具有立体选择性,生成 -烯丙基七糖苷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e9ce/10167658/1ac2f9192214/jo3c00079_0002.jpg

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